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Genetic characterization of ebi reveals its critical role in Drosophila wing growth

机译:ebi的遗传特征揭示了其在果蝇翅膀生长中的关键作用

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摘要

The ebi gene of Drosophila melanogaster has been implicated in diverse signaling pathways, cellular functions and developmental processes. However, a thorough genetic analysis of this gene has been lacking and the true extent of its biological roles is unclear. Here, we characterize eleven ebi mutations and find that ebi has a novel role in promoting growth of the wing imaginal disc: viable combinations of mutant alleles give rise to adults with small wings. Wing discs with reduced EBI levels are correspondingly small and exhibit downregulation of Notch target genes. Furthermore, we show that EBI colocalizes on polytene chromosomes with Smrter (SMR), a transcriptional corepressor, and Suppressor of Hairless (SU(H)), the primary transcription factor involved in Notch signaling. Interestingly, the mammalian orthologs of ebi, transducin β-like 1 (TBL1) and TBL-related 1 (TBLR1), function as corepressor/coactivator exchange factors and are required for transcriptional activation of Notch target genes. We hypothesize that EBI acts to activate (de-repress) transcription of Notch target genes important for Drosophila wing growth by functioning as a corepressor/coactivator exchange factor for SU(H).
机译:果蝇的ebi基因已经牵涉到多种信号通路,细胞功能和发育过程。但是,对该基因缺乏全面的遗传分析,其生物学作用的真正程度尚不清楚。在这里,我们表征了11个ebi突变,发现ebi在促进机翼假体盘的生长中具有新作用:突变等位基因的可行组合会产生具有小机翼的成虫。具有降低的EBI水平的机翼盘片相应较小,并显示出Notch目标基因的下调。此外,我们表明,EBI与Smrter(SMR),转录共抑制因子和无毛抑制因子(SU(H))(参与Notch信号传导的主要转录因子)共聚在多态染色体上。有趣的是,ebi的哺乳动物直系同源基因,即转导蛋白β样1(TBL1)和TBL相关1(TBLR1),起着核心激活因子/共激活因子交换因子的作用,并且是Notch目标基因转录激活所必需的。我们假设EBI通过充当SU(H)的corepressor / coactivator交换因子来激活(抑制)果蝇翅膀生长重要的Notch靶基因的转录。

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